Key Laboratory of Coal Gasification and Energy Chemical Engineering of Ministry of Education, Shanghai Engineering Research Center of Coal Gasification, East China University of Science and Technology, Shanghai 200237, PR China.
Key Laboratory of Coal Gasification and Energy Chemical Engineering of Ministry of Education, Shanghai Engineering Research Center of Coal Gasification, East China University of Science and Technology, Shanghai 200237, PR China.
Bioresour Technol. 2016 Nov;220:509-515. doi: 10.1016/j.biortech.2016.08.116. Epub 2016 Sep 1.
Co-gasification of rice straw (RS) and Shenfu bituminous coal (SF) was conducted in a thermogravimetric analyzer (TGA) to explore the effects of gasification temperature and blend ratio on reactivity characteristics and synergy behaviours of co-gasification. Moreover, the relationship between the synergy and the K/Ca transformation in co-gasification was studied using flame atomic absorption spectrum (FAAS) and in-situ heating stage microscope. The results showed that the whole reactivities increased with increasing RS proportion and gasification temperature. The transformation of water-soluble and ion-exchanged (ws-ie) calcium was enhanced in whole co-gasification and the ws-ie potassium transformation was obviously inhibited in mid-late reaction. Hence, synergy behaviours were synthetically determined by the enhancement of Ca deactivation and the strengthening of K catalysis. The inhibiting effect was occurred in initial co-gasification and was converted to the synergistic effect at a characteristic conversion, which decreased with increasing RS proportion and decreasing gasification temperature.
稻秆(RS)与神府烟煤(SF)的共气化在热重分析仪(TGA)中进行,以探讨气化温度和混合比对共气化反应性特征和协同行为的影响。此外,利用火焰原子吸收光谱(FAAS)和原位加热阶段显微镜研究了协同作用与共气化中 K/Ca 转化之间的关系。结果表明,随着 RS 比例和气化温度的增加,整体反应活性增加。在整个共气化过程中,水溶性和离子交换(ws-ie)钙的转化增强,中晚期反应中 ws-ie 钾的转化明显受到抑制。因此,协同行为是通过 Ca 失活的增强和 K 催化的强化来综合确定的。在初始共气化中存在抑制作用,在特征转化率时转变为协同作用,随着 RS 比例的增加和气化温度的降低而减小。